The operational processing of remote sensing data usually requires high-performance radiative transfer model (RTM) simulations. To date, multi-core CPUs and also Graphical Processing Units (GPUs) have been used for highly intensive parallel computations. In this paper, we have compared multi-core and GPU implementations of an RTM based on the discrete ordinate solution method. To implement GPUs, the original CPU code has been redesigned using the C-oriented Compute Unified Device Architecture (CUDA) developed by NVIDIA. GPU memory management is a crucial issue regarding the performance. To cope with limitations of GPU registers, we have adapted an RTM based on the matrix operator technique together with the interaction principle for mult...
Graphical Processing Unit (GPU) provides a significant amount of computation power that can be used ...
Remote sensing observations in the mid-infrared spectral region (4–15 μm) play a key role in monitor...
Ray-tracing (RT) is integral to resolving numerical radiation heat transfer processes. The radiation...
The future atmospheric composition Sentinel missions will generate two orders of magnitude more dat...
The operational processing of remote sensing data requires high-performance radiative transfer model...
Classical applications of Atmospheric Radiative Transfer Model (ARTM) for modelization of absorption...
International audienceThree-dimensional (3D) radiative transfer (RT) models are frequently recognize...
Context. Radiative transfer (RT) modelling is part of many astrophysical simulations. It is used to ...
The MURaM (Max Planck University of Chicago Radiative MHD) code is a solar atmosphere radiative MHD ...
International audienceThe multiple absorption coefficient zonal method (MACZM) is an efficient radia...
Quantitative retrieval is a growing area in remote sensing due to the rapid development of remote in...
A prototype of a three-dimensional (3-D) radiation model is developed using the lattice Boltzmann me...
The Weather Research and Forecasting (WRF), a next generation mesoscale numerical weather prediction...
Remote sensing is the acquisition of physical response from an object without touch or contact, ofte...
This paper evaluates the potential of embedded graphic processing units (GPU) in the Nvidia's Tegra ...
Graphical Processing Unit (GPU) provides a significant amount of computation power that can be used ...
Remote sensing observations in the mid-infrared spectral region (4–15 μm) play a key role in monitor...
Ray-tracing (RT) is integral to resolving numerical radiation heat transfer processes. The radiation...
The future atmospheric composition Sentinel missions will generate two orders of magnitude more dat...
The operational processing of remote sensing data requires high-performance radiative transfer model...
Classical applications of Atmospheric Radiative Transfer Model (ARTM) for modelization of absorption...
International audienceThree-dimensional (3D) radiative transfer (RT) models are frequently recognize...
Context. Radiative transfer (RT) modelling is part of many astrophysical simulations. It is used to ...
The MURaM (Max Planck University of Chicago Radiative MHD) code is a solar atmosphere radiative MHD ...
International audienceThe multiple absorption coefficient zonal method (MACZM) is an efficient radia...
Quantitative retrieval is a growing area in remote sensing due to the rapid development of remote in...
A prototype of a three-dimensional (3-D) radiation model is developed using the lattice Boltzmann me...
The Weather Research and Forecasting (WRF), a next generation mesoscale numerical weather prediction...
Remote sensing is the acquisition of physical response from an object without touch or contact, ofte...
This paper evaluates the potential of embedded graphic processing units (GPU) in the Nvidia's Tegra ...
Graphical Processing Unit (GPU) provides a significant amount of computation power that can be used ...
Remote sensing observations in the mid-infrared spectral region (4–15 μm) play a key role in monitor...
Ray-tracing (RT) is integral to resolving numerical radiation heat transfer processes. The radiation...